42
H. Bichsel and H. Schindler
29. M. B. Trzhaskovskaya, V. I. Nefedov, and V. G. Yarzhemsky, Atomic Data and Nucl. Data
Tables 77, 97 (2001).
30. M. B. Trzhaskovskaya, V. I. Nefedov, and V. G. Yarzhemsky, Atomic Data and Nucl. Data
Tables 82, 257 (2002).
31. E. D. Palik and E. J. Prucha, Handbook of optical constants of solids, Academic Press, 1998.
32. S. Adachi, Optical constants of crystalline and amorphous semiconductors, Kluwer
Academic Publishers, 1999.
33. O. Klein and Y. Nishina, Z. Physik 52, 853 (1929).
34. J. H. Hubbell, Photon Cross Sections, Attenuation Coefficients, and Energy Absorption
Coefficients from 10 keV to 100 GeV, NSRDS-NBS 29, National Bureau of Standards, 1969,
available online at https://www.nist.gov/srd/national-standard-reference-data-series.
35. P. M. Bergstrom and R. H. Pratt, Radiation Physics and Chemistry 50, 3 (1997).
36. J. H. Hubbell, H. A. Gimm, and I. Øverbø, J. Phys. Chem. Ref. Data 9, 1023 (1980).
37. D. Bote and F. Salvat, Phys. Rev. A 77, 042701 (2008).
38. L. D. Landau, E. M. Lifshitz, and L. P. Pitaevskii, Electrodynamics of Continuous Media,
Butterworth, 1984.
39. J. Lindhard, Mat. Fys. Medd. Dan. Vid. Selsk. 28, 1 (1954).
40. J. Lindhard and A. Winther, Mat. Fys. Medd. Dan. Vid. Selsk. 34, 1 (1964).
41. H. Bichsel, Rev. Mod. Phys. 60, 663 (1988).
42. H. Bichsel, Phys. Rev. A 65, 052709 (2002).
43. H. Bichsel, Phys. Rev. A 46, 5761 (1992).
44. H. Bichsel, K. M. Hanson, and M. E. Schillaci, Phys. Med. Biol. 27, 959 (1982).
45. M. C. Walske, Phys. Rev. 88, 1283 (1952).
46. M. C. Walske, Phys. Rev. 101, 1940 (1956).
47. V. A. Chechin, L. P. Kotenko, G. I. Merson, and V. C. Yermilova, Nucl. Instr. Meth. 98, 577
(1972).
48. F. Lapique and F. Piuz, Nucl. Instr. Meth. 175, 297 (1980).
49. I. B. Smirnov, Nucl. Instr. Meth. A 554, 474 (2005).
50. J. Apostolakis et al., Nucl. Instr. Meth. A 453, 597 (2000).
51. H. Bichsel, Nucl. Instrum. Meth. A 562, 154 (2006).
52. F. Rieke and W. Prepejchal, Phys. Rev. A 6, 1507 (1972).
53. R. P. Saxon, Phys. Rev. A 8, 839 (1973).
54. M. Inokuti, R. P. Saxon, and J. L. Dehmer, Int. J. Radiat. Phys. Chem. 7, 109 (1975).
55. B. Sitar, G. I. Merson, V. A. Chechin, and Y. A. Budagov, Ionization Measurements in High
Energy Physics, Springer, 1993.
56. G. W. McClure, Phys. Rev. 90, 796 (1953).
57. G. Malamud, A. Breskin, R. Chechik, and A. Pansky, J. Appl. Phys. 74, 3645 (1993).
58. H. A. Bethe and R. W. Jackiw, Intermediate quantum mechanics, Benjamin, 1986.
59. R. M. Sternheimer, M. J. Berger, and S. M. Seltzer, Atomic Data and Nucl. Data Tables 30,
261 (1984).
60. Stopping powers and ranges for protons and alpha particles, International Commission on
Radiation Units and Measurements, Washington, DC, 1993, ICRU Report 49.
61. M. J. Berger, J. S. Coursey, M. A. Zucker, and J. Chang, ESTAR, PSTAR, and ASTAR:
Computer Programs for Calculating Stopping-Power and Range Tables for Electrons, Protons,
and Helium Ions, http://physics.nist.gov/Star.
62. D. E. Groom, N. V. Mokhov, and S. I. Striganoff, Atomic Data and Nucl. Data Tables 78, 183
(2001).
63. W. H. Barkas, J. N. Dyer, and H. H. Heckman, Phys. Rev. Lett. 11, 26 (1963).
64. H. H. Andersen, H. Simonsen, and H. Sørensen, Nuclear Physics A 125, 171 (1969).
65. H. Bichsel, Phys. Rev. A 41, 3642 (1990).
66. E. A. Uehling, Annu. Rev. Nucl. Sci. 4, 315 (1954).
67. Stopping powers for electrons and positrons, International Commission on Radiation Units
and Measurements, Washington, DC, 1979, ICRU Report 37.
68. H. Bethe and W. Heitler, Proc. Roy. Soc. A 146, 83 (1934).
H. Bichsel and H. Schindler
29. M. B. Trzhaskovskaya, V. I. Nefedov, and V. G. Yarzhemsky, Atomic Data and Nucl. Data
Tables 77, 97 (2001).
30. M. B. Trzhaskovskaya, V. I. Nefedov, and V. G. Yarzhemsky, Atomic Data and Nucl. Data
Tables 82, 257 (2002).
31. E. D. Palik and E. J. Prucha, Handbook of optical constants of solids, Academic Press, 1998.
32. S. Adachi, Optical constants of crystalline and amorphous semiconductors, Kluwer
Academic Publishers, 1999.
33. O. Klein and Y. Nishina, Z. Physik 52, 853 (1929).
34. J. H. Hubbell, Photon Cross Sections, Attenuation Coefficients, and Energy Absorption
Coefficients from 10 keV to 100 GeV, NSRDS-NBS 29, National Bureau of Standards, 1969,
available online at https://www.nist.gov/srd/national-standard-reference-data-series.
35. P. M. Bergstrom and R. H. Pratt, Radiation Physics and Chemistry 50, 3 (1997).
36. J. H. Hubbell, H. A. Gimm, and I. Øverbø, J. Phys. Chem. Ref. Data 9, 1023 (1980).
37. D. Bote and F. Salvat, Phys. Rev. A 77, 042701 (2008).
38. L. D. Landau, E. M. Lifshitz, and L. P. Pitaevskii, Electrodynamics of Continuous Media,
Butterworth, 1984.
39. J. Lindhard, Mat. Fys. Medd. Dan. Vid. Selsk. 28, 1 (1954).
40. J. Lindhard and A. Winther, Mat. Fys. Medd. Dan. Vid. Selsk. 34, 1 (1964).
41. H. Bichsel, Rev. Mod. Phys. 60, 663 (1988).
42. H. Bichsel, Phys. Rev. A 65, 052709 (2002).
43. H. Bichsel, Phys. Rev. A 46, 5761 (1992).
44. H. Bichsel, K. M. Hanson, and M. E. Schillaci, Phys. Med. Biol. 27, 959 (1982).
45. M. C. Walske, Phys. Rev. 88, 1283 (1952).
46. M. C. Walske, Phys. Rev. 101, 1940 (1956).
47. V. A. Chechin, L. P. Kotenko, G. I. Merson, and V. C. Yermilova, Nucl. Instr. Meth. 98, 577
(1972).
48. F. Lapique and F. Piuz, Nucl. Instr. Meth. 175, 297 (1980).
49. I. B. Smirnov, Nucl. Instr. Meth. A 554, 474 (2005).
50. J. Apostolakis et al., Nucl. Instr. Meth. A 453, 597 (2000).
51. H. Bichsel, Nucl. Instrum. Meth. A 562, 154 (2006).
52. F. Rieke and W. Prepejchal, Phys. Rev. A 6, 1507 (1972).
53. R. P. Saxon, Phys. Rev. A 8, 839 (1973).
54. M. Inokuti, R. P. Saxon, and J. L. Dehmer, Int. J. Radiat. Phys. Chem. 7, 109 (1975).
55. B. Sitar, G. I. Merson, V. A. Chechin, and Y. A. Budagov, Ionization Measurements in High
Energy Physics, Springer, 1993.
56. G. W. McClure, Phys. Rev. 90, 796 (1953).
57. G. Malamud, A. Breskin, R. Chechik, and A. Pansky, J. Appl. Phys. 74, 3645 (1993).
58. H. A. Bethe and R. W. Jackiw, Intermediate quantum mechanics, Benjamin, 1986.
59. R. M. Sternheimer, M. J. Berger, and S. M. Seltzer, Atomic Data and Nucl. Data Tables 30,
261 (1984).
60. Stopping powers and ranges for protons and alpha particles, International Commission on
Radiation Units and Measurements, Washington, DC, 1993, ICRU Report 49.
61. M. J. Berger, J. S. Coursey, M. A. Zucker, and J. Chang, ESTAR, PSTAR, and ASTAR:
Computer Programs for Calculating Stopping-Power and Range Tables for Electrons, Protons,
and Helium Ions, http://physics.nist.gov/Star.
62. D. E. Groom, N. V. Mokhov, and S. I. Striganoff, Atomic Data and Nucl. Data Tables 78, 183
(2001).
63. W. H. Barkas, J. N. Dyer, and H. H. Heckman, Phys. Rev. Lett. 11, 26 (1963).
64. H. H. Andersen, H. Simonsen, and H. Sørensen, Nuclear Physics A 125, 171 (1969).
65. H. Bichsel, Phys. Rev. A 41, 3642 (1990).
66. E. A. Uehling, Annu. Rev. Nucl. Sci. 4, 315 (1954).
67. Stopping powers for electrons and positrons, International Commission on Radiation Units
and Measurements, Washington, DC, 1979, ICRU Report 37.
68. H. Bethe and W. Heitler, Proc. Roy. Soc. A 146, 83 (1934).
